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High-Throughput and Efficient Intracellular Delivery Method via a Vibration-Assisted Nanoneedle/Microfluidic Composite System

ACS Nano. 2022-12; 
Xuan Li , Yuan Ma , Yu Xue , Xuanhe Zhang , Linwen Lv , Qianghua Quan , Yiqing Chen , Guoxu Yu , Zhenwei Liang , Xinping Zhang , Ding Weng , Lei Chen , Kui Chen , Xin Han , Jiadao Wang
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Abstract

Intracellular delivery and genetic modification have brought a significant revolutionary to tumor immunotherapy, yet existing methods are still limited by low delivery efficiency, poor throughput, excessive cell damage, or unsuitability for suspension immune cells, specifically the natural killer cell, which is highly resistant to transfection. Here, we proposed a vibration-assisted nanoneedle/microfluidic composite system that uses large-area nanoneedles to rapidly puncture and detach the fast-moving suspension cells in the microchannel under vibration to achieve continuous high-throughput intracellular delivery. The nanoneedle arrays fabricated based on the large-area self-assembly technique and microchannels... More

Keywords

Cas9/RNPs delivery; cellular immunotherapy; intracellular delivery; microfluidic; nanoneedle; transfection.